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Pyrite from Indian Plate (India Plate)

Bangladesh
 
  • Chittagong Division
    • Cox's Bazar District
Hasan, A.S.M. Mehedi, Hossain, Ismail, Rahman, Md. Aminur, Zaman, Mohammad Nazim, Biswas, Pradip Kumar, Alam, Md. Sha (2022) Chemistry and mineralogy of Zr- and Ti-rich minerals sourced from Cox’s Bazar beach placer deposits, Bangladesh: Implication of resources processing and evaluation. Ore Geology Reviews, 141. 104687 doi:10.1016/j.oregeorev.2021.104687
      • Moheskhali
Ahmed, S., Miah, M., Qumruzzaman, C., Zaman, M., Alam, A., & Biswas, P. (2010) Alteration and Exsolution Characteristics of Ilmenites of Moheskhali Island, Chittagong, Bangladesh. Bangladesh Journal of Scientific and Industrial Research, 45(1): 17-26.
India
 
  • Andhra Pradesh
    • Annamayya District
      • Obulavaripalle mandal
Clark, S.H.B., Poole, F.G., and Zhongcheng Wang (2004): Ore Geology Reviews 24, 85-101.
    • Kadapa District (YSR District)
Chalapathi Rao, N. V., Gibson, S. A., Pyle, D. M., & Dickin, A. P. (2004). Petrogenesis of Proterozoic lamproites and kimberlites from the Cuddapah Basin and Dharwar craton, southern India. Journal of Petrology, 45(5), 907-948.
    • Kurnool District
      • Jonnagiri
Saravanan, C.S., and Mishra, B. (2009): Mineralium Deposita 44, 597-605.
    • Palnadu District
Wauschkuhn, A., Kluth, C., & Zimmermann, R. A. (Eds.). (2012). Syngenesis and epigenesis in the formation of mineral deposits: a volume in honour of Professor G. Christian Amstutz on the occasion of his 60th birthday with special reference to one of his main scientific interests. Springer Science & Business Media.
  • Assam
    • East Karbi Anglong District
S. Nag, S. K. Sengupta, R. K. Gaur and A. Absar (1999) Alkaline rocks of Samchampi-Samteran, District Karbi Anglong, Assam, India. Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 108, 33-48.
Nag, S., Sengupta, S. K., Gaur, R. K., & Absar, A. (1999). Alkaline rocks of Samchampi-Samteran, District Karbi-Anglong, Assam, India. Proceedings of the Indian Academy of Sciences-Earth and Planetary Sciences, 108(1), 33-48.
Kumar, D., Mamallan, R., Saravanan, B., Jain, S. K., & Krishnamurthy, P. (1989). Petrology and geochemistry of the Samchampi alkaline carbonatite complex, Mikir Hills, Assam, India. Exploration and Research of Atomic Minerals, 2, 183-199.
    • Nagaon District
Majumdar, D. (2010) Need to intensify base metal exploration activities in Mikir Hills, northeastern India. Current Science, 656-662.
  • Gujarat
    • Chhota Udaipur District
Econ Geol. (1995) 90:2018-2027
Srivastava, R. K. (1994). Petrology, petrochemistry and genesis of the alkaline rocks associated with the Ambadungar Carbonatite Complex, Baroda district, Gujarat, India. JOURNAL-GEOLOGICAL SOCIETY OF INDIA, 43, 23-23.
Rock, N. M. S., Gwalani, L. G., & Griffin, B. J. (1994). Alkaline rocks and carbonatites of Amba Dongar and adjacent areas, Deccan Alkaline Province, Gujarat, India. 2. Complexly zoned clinopyroxene phenocrysts. Mineralogy and Petrology, 51(2-4), 113-135.
Viladkar, S. G., & Wimmenauer, W. (1992). Geochemical and petrological studies on the Amba Dongar carbonatites (Gujarat, India). Chem. Erde, 52, 277-291.
Viladkar, S. G., & Wimmenauer, W. (1992). Geochemical and petrological studies on the Amba Dongar carbonatites (Gujarat, India). Chem. Erde, 52, 277-291.
Notholt, A. J. G., Highley, D. E., & Deans, T. (1990). Economic minerals in carbonatites and associated alkaline igneous rocks. Institution of Mining and Metallurgy Transactions. Section B. Applied Earth Science, 99.
Viladkar, S. G. (1984). Alkaline rocks associated with the carbonatites of Amba Dongar, Chhota Udaipur, Gujarat, India. Indian Mineral, 130-135.
Viladkar, S. G. (1981). The carbonatites of Amba Dongar, Gujarat, India. Bull. Geol. Soc. Finland, 53, 17-28.
Deans, T., Sukheswala, R. N., Sethna, S. F., & Viladkar, S. G. (1973). Discussion and contributions: Metasomatic feldspar rocks (potash fenites) associated with the fluorite deposits and carbonatites of Amba Dongar, Gujarat, India. Inst. Mining Metall. Trans, 82, 33-40.
Deans, T., Sukheswala, R. N., Sethna, S. F., & Viladkar, S. G. (1972). Metaso-matic feldspar rocks (potash fenites) associated with the fluorite deposits and earbonatites of Amba Dongar, Gujarat, India: Institution of Mining and Metallurgy Transactions, v. 81, p.
Srivastava, R. K. (1997). Petrology, geochemistry and genesis of rift-related carbonatites of Ambadungar, India. Mineralogy and Petrology, 61(1-4), 47-66.
  • Haryana
    • Bhiwani District
Murao, S., Deb, M., and Furuno, M. (2008): Ore Geology Reviews 33, 490-504.
  • Jharkhand
    • Dhanbad District
Srivastava, R. K., Rao, N. C., & Sinha, A. K. (2009). Cretaceous potassic intrusives with affinities to aillikites from Jharia area: magmatic expression of metasomatically veined and thinned lithospheric mantle beneath Singhbhum Craton, Eastern India. Lithos, 112, 407-418.
Mitchell, R. H. (2007). Potassic rocks from the Gondwana coalfields of India: Closing Pandora's box of petrological confusion?. JOURNAL-GEOLOGICAL SOCIETY OF INDIA, 69(3), 505.
Kent, R. W., Kelley, S. P., & Pringle, M. S. (1998). Mineralogy and 40Ar/39Ar geochronology of orangeites (Group II kimberlites) from the Damodar Valley, eastern India. Mineralogical Magazine, 62(3), 313-323.
Rock, N. M. S., Griffin, B. J., Edgar, A. D., Paul, D. K., & Hergt, J. M. (1992). A spectrum of potentially diamondiferous lamproites and minettes from the Jharia coalfield, eastern India. Journal of Volcanology and Geothermal Research, 50(1-2), 55-83.
    • East Singhbhum District
      • Jadugora
Sinha, D. K., & Verma, M. B. (2018). Uranium Potential of the Singhbhum Shear Zone, India: Future Prospects (No. IAEA-CN--261).
Pal, D. C., & Bhowmick, T. (2015). Petrography and microthermometry of fluid inclusions in apatite in the Turamdih uranium deposit, Singhbhum shear zone, eastern India-An insight into ore forming Fluid. Journal of the Geological Society of India, 86, 253-262.
Mineralium Deposita 44 (2009), 61-80.
www.dae.gov.in (2001) http://www.dae.gov.in/amd/earv5.htm#v5_11
      • Mosaboni
www.portergeo.com.au (2003) http://www.portergeo.com.au/database/mineinfo.asp?mineid=mn460
Changkakoti, A., Gray, J., Morton, R. D., & Sarkar, S. N. (1987). The Mosaboni copper deposit, India
a preliminary study on the nature and genesis of the ore-fluids. Economic Geology, 82(6), 1619-1625.
S. G. Tenainkai, A. G. Ugarkar, M. V. Koti and A. Mookherjee (1991) Copper-bearing clay minerals of the oxidized zone of the Rakha-Chapri Block, Singhbhum Copper Belt, India. Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 100, 13-30.
    • Ramgarh District
Woolley, Alan R. (2019) Alkaline Rocks and Carbonatites of the World. Part 4: Antarctica, Asia and Europe (excluding the former USSR), Australasia and Oceanic Islands. The Geological Society of London. doi:10.1144/mpar4
Mitchell, R. H. (2007). Potassic rocks from the Gondwana coalfields of India: Closing Pandora's box of petrological confusion?. JOURNAL-GEOLOGICAL SOCIETY OF INDIA, 69(3), 505-512.
Basu, A., Bhattacharya, A. K., & Paul, P. K. (1997). Petrology and geochemistry of the lamprophyric rocks from the Bokaro Coalfield, Bihar and their economic potential. JOURNAL-GEOLOGICAL SOCIETY OF INDIA, 50, 255-266.
    • West (Pashchimi) Singhbhum District
Singh, K. K. (1959). Geology of the Chromite Deposits of Jojohatu near Chaibasa, Singbhum District, Bihar, India (Volume-I) (Doctoral dissertation, IIT Kharagpur).
  • Karnataka
    • Chitradurga District
      • Chitradurga
Wauschkuhn, A., Kluth, C., & Zimmermann, R. A. (Eds.). (2012). Syngenesis and epigenesis in the formation of mineral deposits: a volume in honour of Professor G. Christian Amstutz on the occasion of his 60th birthday with special reference to one of his main scientific interests. Springer Science & Business Media.
Pathan, A. M. & Naganna, C. (1970): Minerographic study of some of the sulfide ore from Ingaldhal, Chitaldurg district, Mysore state. Proceedings - Indian Academy of Sciences, Section B 72, 41-47.
T. C. Devaraju and K. S. Anantha Murthy (1978) Mineralogy of the fuchsites from Gattihosahalli, Karnataka State —Proceedings of the Indian Academy of Sciences - Earth and Planetary Sciences, 87, 255-261.
    • Hassan District
      • Arsikere
Subba Rao, D.V., and Naqvi, S.M. (1997): Mineralium Deposita 32, 230-242.
    • Kolar District
      • Kolar Gold Fields
        • Central Schist Belt
Santosh, M. (1986). Ore fluids in the auriferous Champion reef of Kolar, South India. Economic Geology, 81(6), 1546-1552.
Mishra, B., and Panigrahi, M.K. (1999): Mineralium Deposita 34, 173-181
Raman, P. V., & Narayanan, P. I. A. (1969). Studies on Nundydroog gold ore with a view to improving gold recovery.
        • South Schist Belt
Econ Geol (1989) 84:2155-2172
    • Raichur District
D.K. Sinha, (2022) Comments on “Mineral chemistry of hydrothermal alteration assemblage in hanging wall Shahapur Granite associated with vein type Gogi uranium deposit, Bhima basin, Eastern Dharwar Craton, India: Implication for physico-chemical conditions of ore formation” by Mohd Qaim Raza and Nurul Absar. [Ore Geol. Review, 2021, 128, 1–20], Ore Geology Reviews, 149,104666
Sakhti Saravanan, C. & Mishra, B.. (2009): Mineralium Deposita 44, 597-605.
Raju, P. S., & Sangurmath, P. (2022). The Occurrence of Platinum (Pt) and Skaergaardite (Pd Cu) in the Hutti Underground Gold Mines, Eastern Dharwar Craton, Karnataka, India. Journal of the Geological Society of India, 98(9), 1217-1220.
Economic Geology 103 (2008) 1715-1727
Sakhti Saravanan, C. & Mishra, B.. (2009): Mineralium Deposita 44, 597-605.
    • Shimoga District
Datta, P., & Mukherjee, R. (2021, December). Genesis of Sulfides and Platinum-group Minerals (PGMs) from the Shankaraghatta Ultramafic-Mafic Belt, Western Dharwar Craton (southern India). In AGU Fall Meeting Abstracts (Vol. 2021, pp. V41B-08).
    • Tumkur District
      • Chitradurga belt
Sakhti Saravanan, C. & Mishra, B.. (2009): Mineralium Deposita 44, 597-605.
André Hellmann et al (2001) in (2001) European Union of Geosciences Conference XI (OS6)
  • Kerala
    • Kannur district
Santosh, M., Iyer, S. S., Vasconcellos, M. B. A., & Enzweiler, J. (1989). Late Precambrian alkaline plutons in southwest India: geochronologic and rare-earth element constraints on Pan-African magmatism. Lithos, 24(1), 65-79.
Santosh, M., & Kumar, K. V. (1986). Radioelement geochemistry of alkali granites of the Kerala region, south-west India. Proceedings of the Indian Academy of Sciences-Earth and Planetary Sciences, 95(1), 103-115.
Nair, N. G. K., & Santosh, M. (1984). Petrochemistry and tectonic significance of the Peralimala alkali granite, Cannanore District, Kerala. Journal of the Geological Society of India, 25(1), 35-44.
Sukumaran, P. V., & PV, S. (1983). AEGIRINE AUGITE SYENITE AT PERALIMALA, CANNANORE DISTRICT KERALA. Journal of the Geological Society of India, 24, 54-56.
    • Palghat District
M. Santosh and K. G. Thara (1985) The Mannapra syenite, Central Kerala, India: Geochemistry, petrogenesis and bearing on anorogenic magmatism — Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, 94, 43-56.
  • Madhya Pradesh
    • Jabalpur Division
      • Balaghat District
        • Baihar Tehsil
          • Malanjkand
Panigrahi, M.K., and Mookherjee, A. (1997): Mineralium Deposita 32, 133-148.
Sikka, D. B., Petruk, W., Nehru, C. E., & Zhang, Z. (1991). Geochemistry of secondary copper minerals from Proterozoic porphyry copper deposit, Malanjkhand, India. Ore Geology Reviews, 6(2-3), 257-290.
    • Katni district
Tripathi, S., & Deb, M. (2022). Mineralogy of the Imalia Au-Sn-bearing polymetallic sulfide deposit, Mahakoshal belt, Central India. Journal of Asian Earth Sciences: X, 8, 100117.
    • Narsinghpur District
Kumar, K.S. (2020) Magnetic Survey for Iron-Oxide-Copper-Gold (IOCG) and Alkali Calcic Alteration Signatures in Gadarwara, M.P, India: Implications on Copper Metallogeny. Minerals 10, 671.
Raju, P.S.
    • Panna District
      • Panna
        • Panna Mines
Rao, C. N. (2006). Mesoproterozoic diamondiferous ultramafic pipes at Majhgawan and Hinota, Panna area, central India: Key to the nature of sub-continental lithospheric mantle beneath the Vindhyan basin. Journal of earth system science, 115(1), 161-183.
Rao, C. N. (2006). Mesoproterozoic diamondiferous ultramafic pipes at Majhgawan and Hinota, Panna area, central India: Key to the nature of sub-continental lithospheric mantle beneath the Vindhyan basin. Journal of earth system science, 115(1), 161-183.
  • Maharashtra
    • Gondpipri complex
Dora, M., Singh, H., Kundu, A., Shareef, M., Randive, K., & Joshi, S. (2014). Tsumoite (BiTe) and associated Ni-PGE mineralization from Gondpipri mafic-ultramafic complex, Bastar Craton, Central India: mineralogy and genetic significance. Open Geosciences, 6(4), 506-517.
    • Konkan Division
      • Raigad District
        • Murud
          • Murud-Janjira
A.G. Dessai et al. , Eur. J. Mineral. , 1990, 2, pp. 667-685.
      • Salsette Island
        • Mumbai Suburban District
Rock Currier and Alfredo Petrov specimens
          • Malad
Ottens, Berthold, Schuster, Ralf, Benkó, Zsolt (2022) The Secondary Minerals from the Pillow Basalt of Salsette-Mumbai, Deccan Volcanic Province, India. Minerals, 12 (4) 444 doi:10.3390/min12040444
Ottens, Berthold, Götze, Jens, Schuster, Ralf, Krenn, Kurt, Hauzenberger, Christoph, Zsolt, Benkó, Vennemann, Torsten (2019) Exceptional Multi Stage Mineralization of Secondary Minerals in Cavities of Flood Basalts from the Deccan Volcanic Province, India. Minerals, 9 (6) 351 doi:10.3390/min9060351
    • Nagpur Division
      • Nagpur District
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
  • Manipur
    • Ukhrul District
G. K. Kesar (2011) Geology And Mineral Resources Of Manipur, Mizoram, Nagaland And Tripura. Geological Survey Of India Miscelleaneous Publication No. 30 Part IV, Vol 1(Part-2)
G. K. Kesar (2011) Geology And Mineral Resources Of Manipur, Mizoram, Nagaland And Tripura. Geological Survey Of India Miscelleaneous Publication No. 30 Part IV, Vol 1(Part-2)
  • Meghalaya
    • East Khasi Hills District
Melluso, L., Srivastava, R. K., Guarino, V., Zanetti, A., & Sinha, A. K. (2010). Mineral compositions and petrogenetic evolution of the ultramafic-alkaline–carbonatitic complex of Sung Valley, northeastern India. The Canadian Mineralogist, 48(1), 205-229.
    • South West Khasi Hills District
K.K. Dwivedy (1993) Possibility Of New Uranium Discoveries In The Environs Of Domiasiat, Meghalaya, India. in IAEA-TECDOC-823 pp145-161
  • Odisha
    • Keonjhar District
Canadian Mineralogist 40:277-309
Augé, T., Bailly, L., Cocherie, A., Genna, A., Guerrot, C., Lerouge, C., ... & Patra, R. N. (2002, July). Magmatic and Hydrothermal Platinum-Group Element Mineralization in the Baula Area, Orissa, India. In Proceedings of the 9th International Platinum Symposium (pp. 21-24).
Sahu, P., Dash, P., Satyanarayanan, M., Jena, M. S., & Mandre, N. R. (2022). Characterization for Identification of Possible Beneficiation Strategies for Low-Grade PGE Ores from Mesoarchean Boula-Nuasahi Igneous Complex, Singhbhum Craton, India. Transactions of the Indian Institute of Metals, 1-16.
Prichard, H. M., Mondal, S. K., Mukherjee, R., Fisher, P. C., & Giles, N. (2018). Geochemistry and mineralogy of Pd in the magnetitite layer within the upper gabbro of the Mesoarchean Nuasahi Massif (Orissa, India). Mineralium Deposita, 53(4), 547-564.
Mineralogical Magazine 1997 61 : 902-906
    • Nuapada District
Upadhyay, D., Raith, M. M., Mezger, K., Bhattacharya, A., & Kinny, P. D. (2006). Mesoproterozoic rifting and Pan-African continental collision in SE India: evidence from the Khariar alkaline complex. Contributions to Mineralogy and Petrology, 151(4), 434-456.
Madhavan, V., & Khurram, M. Z. A. K. (1989). The alkaline gneisses of Khariar, Kalahandi district, Orissa. Mem. Geol. Soc. India, 15, 265-289.
    • Rayagada District
Acharya, B.C., Rao, D.S., and Sahoo, R.K. (1997): Mineralium Deposita 32, 79-93.
  • Rajasthan
    • Ajmer District
Hindustan Zinc Limited (2017) Expansion of Kayad Lead-Zinc Ore Underground Mine from 1.0 million TPA to 1.2 million TPA (ROM). PRE- FEASIBILITY REPORT
    • Bhilwara District
Khan, R., Shaif, M., & Siddiquie, F. N. (2021). Mineragraphic Studies of Pb-Zn Ore Deposits of Rampura-Agucha Area, Bhilwara Belt, Rajasthan. Journal of Scientific Research, 65(1).
Mineralium Deposita (2009) 44, 183-204
Nalin Shah (2002) Rampura-Agucha - A remobilized SEDEX deposit Southeastern Rajasthan, India in M. Deb, Wayne David Goodfellow eds. Sediment-hosted lead-zinc sulphide deposits: attributes and models of some major deposits in India, Australia and Canada
Mukherjee, A. D., Sen, R., & Mondal, A. (1998). Freibergite from polymetallic sulphide deposits of the Delhi-Aravalli belt, Rajasthan. Journal of the Geological Society of India, 52(5), 543-547.
Höller, W., and Gandhi, S.M. (1997): Mineralogy and Petrology 60, 99-119.
Current Science, 92, 5, 592-4, 2007
    • Jaipur district
Sarkar, S. C., Bhattacharyya, P. K., Mukherjee, A. D. (1980) Evolution of the sulfide ores of Saladipura, Rajasthan, India. Economic Geology, 75 (8) 1152-1167 doi:10.2113/gsecongeo.75.8.1152
      • Sikar District
        • Khetri
Baidya, A. S., Sen, A., & Pal, D. C. (2018). Textures and compositions of cobalt pentlandite and cobaltian mackinawite from the Madan-Kudan copper deposit, Khetri Copper Belt, Rajasthan, India. Journal of Earth System Science, 127(4), 56.
Ahmed, M., Shaif, M., Siddiquie, F. N., & Khan, R. (2018). Mode of Occurrence and Mineralogy of Northern Khetri Copper Deposits, Jhunjhunu District, Rajasthan. Natural Resources, 2018, 9, 389-403
Singh, S., & Virk, H. S. (1980). Fission track dating of copper ore formations of Khetri area, Rajasthan State (India). Geochemical Journal, 14(1), 51-55.
Deb, S., & Mukherjee, A. D. (1969). Mackinawites from Madhan-Kudhan and Kolihan sections of Khetri copper belt, Rajasthan. Proc. Nat. Inst. Sci. India 35A, (4), 533-541.
Padhi, Ajoy Kumar, Mrinal Kanti Mukherjee, Brajesh Kumar Tripathi, Dheeraj Pande, Balbir Singh Bisht, and Bhabesh Chandra Sarkar. (2023) "Polymetallic Uranium Mineralisation in Rohil, Rajasthan, Western India: Insights from Mode of Occurrences, Structural Controls, Alteration Geochemistry and Exploration" Minerals 13, no. 4: 555. https://doi.org/10.3390/min13040555
Padhi, Ajoy Kumar, Mrinal Kanti Mukherjee, Brajesh Kumar Tripathi, Dheeraj Pande, Balbir Singh Bisht, and Bhabesh Chandra Sarkar. (2023) "Polymetallic Uranium Mineralisation in Rohil, Rajasthan, Western India: Insights from Mode of Occurrences, Structural Controls, Alteration Geochemistry and Exploration" Minerals 13, no. 4: 555. https://doi.org/10.3390/min13040555
Rout, D., Krishnamurthi, R., & Sinha, D. K. (2022). Mineralogy and Paragenesis of the Meso-Proterozoic Rohil Uranium Deposit, North Delhi Fold Belt, Rajasthan, India. Ore Geology Reviews, 105204.
Nanda, L. K., Katti, V. J., & Maithani, P. B. (2009). Prospects and potentialities for uranium in North Delhi Fold Belt: A case study from Rohil, Rajasthan, India (No. IAEA-CN--175).
Mineralogical Magazine (1967) 36 ,22-28
    • Jhunjhunu District
Ahmed, M., Shaif, M., Siddiquie, F. N., & Khan, R. (2018). Mode of Occurrence and Mineralogy of Northern Khetri Copper Deposits, Jhunjhunu District, Rajasthan. Natural Resources, 2018, 9, 389-403
Ahmed, M., Shaif, M., Siddiquie, F. N., & Khan, R. (2018). Mode of Occurrence and Mineralogy of Northern Khetri Copper Deposits, Jhunjhunu District, Rajasthan. Natural Resources, 2018, 9, 389-403
    • Jodhpur Division
      • Barmer District
Patel, Ashim Kumar, Upadhyay, Dewashish, Mishra, Biswajit, Pruseth, Kamal Lochan (2023) Reconstruction of hydrothermal fluid composition of the Kamthai carbonatite complex, India using lattice strain model: Implications for LREE/HREE fractionation. Lithos, 444. 107097 doi:10.1016/j.lithos.2023.107097
Bhushan, S. K. (2015). Geology of the Kamthai rare earth deposit. Journal of the Geological Society of India, 85(5), 537-546.
        • Malani Igneous Province
Bhushan, S. K., & Somani, O. P. (2019). Rare earth elements and yttrium potentials of Neoproterozoic peralkaline Siwana granite of Malani igneous suite, Barmer district, Rajasthan. Journal of the Geological Society of India, 94(1), 35-41.
      • Sirohi District
Mukherjee, A. D., Sen, R., & Mondal, A. (1998). Freibergite from polymetallic sulphide deposits of the Delhi-Aravalli belt, Rajasthan. Journal of the Geological Society of India, 52(5), 543-547.
Mukherjee, A. D., Sen, R., & Mondal, A. (1998). Freibergite from polymetallic sulphide deposits of the Delhi-Aravalli belt, Rajasthan. Journal of the Geological Society of India, 52(5), 543-547.
Deb, M., Tiwary, A., and Palmer, M.R. (1997): Mineralium Deposita 32, 94-99.
Deb, M. (1980): Genesis and Metamorphism of Two Stratiform Massive Sulfide Depoosits at Ambaji and Deri in the Precambrian of Western India. Economic Geology, 75: 572-591.
Deb, M. (1980): Genesis and Metamorphism of Two Stratiform Massive Sulfide Depoosits at Ambaji and Deri in the Precambrian of Western India. Economic Geology, 75: 572-591.
Deb, M. (1980): Genesis and Metamorphism of Two Stratiform Massive Sulfide Depoosits at Ambaji and Deri in the Precambrian of Western India. Economic Geology, 75: 572-591.
Subrahmanyam, N. P., & Leelanandam, C. (1991). Geochemistry and petrology of the cumulophyric layered suite of rocks from the Toa pluton of the Mundwara alkali igneous complex, Rajasthan. Journal of the Geological Society of India, 38(4), 397-411.
LE-BAS, M. J., & Srivastava, R. K. (1989). The mineralogy and geochemistry of the Mundwara carbonatite dykes, Sirohi District, Rajasthan, India. Neues Jahrbuch für Mineralogie. Abhandlungen, (2), 207-227.
Subrahmanyam, N. P., & Rao, G. V. D. (1977). Petrography, geochemistry and origin of the carbonatite veins of Mer pluton, Mundwara igneous complex, Rajasthan. Geological Society of India, 18(7), 306-322.
Narayan Das, G.R., Sharma, C.V. & Navaneetham, K.V. 1982. Carbonate-alkaline Complex of Mundwara. Journal of the Geological Society of India, 23, 604-609.
    • Nagaur District
Roy, J. K., & Bhattacharya, S. (2022). Records of fluid-rock interactions in the Degana tungsten deposit, India: inferences from mineral paragenesis, whole-rock and mineral chemistry, and fluid inclusions. Ore Geology Reviews, 104804.
(1998) International strategic mineral issues summary report: tungsten. Circular 930-O. US Geological Survey doi:10.3133/cir930o
    • Udaipur Division
      • Banswara district
[var. Arsenic-bearing Pyrite] Anand, Abhishek, Sahendra Singh, Arindam Gantait, Amit Srivastava, Girish Kumar Mayachar, and Manoj Kumar. (2022) "Geological Constraints on the Genesis of Jagpura Au-Cu Deposit NW India: Implications from Magnetite-Apatite Mineral Chemistry, Fluid Inclusion and Sulfur Isotope Study" Minerals 12, no. 11: 1345. https://doi.org/10.3390/min12111345
      • Chittorgarh District
Bhatt, A. K. (1999): Phurcalite: a rare secondary calcium uranium phosphate mineral from Putholi, Chittaurgarh district, Rajasthan. Journal of the Geological Society of India 53, 355-357.
Singh, Yamuna
Singh, K. D. P.
      • Udaipur District
Banerjee, D. M., Basu, P. C., and Srivastava, N., 1980, Petrology, Mineralogy, Geochemistry, and Origin of the Precambrian Aravallian Phosphorite Deposits of Udaipur and Jhabua, India, Economic Geology 75: 1181-1199.
Viladkar, S. G. Graphite-bearing dolomite carbonatites in Newania, Western India.
Mukherjee, A. D., Sen, R., & Mondal, A. (1998). Freibergite from polymetallic sulphide deposits of the Delhi-Aravalli belt, Rajasthan. Journal of the Geological Society of India, 52(5), 543-547.
Mineralogical Magazine 1968 36 : 1174-1175
Pal, T., & Deb, M. (2009). Breithauptite: A rare antimonide in the Dariba-Rajpura-Bethumni belt, Rajsamand district, Rajasthan. Journal of the Geological Society of India, 74(1), 35-38.
        • Udaipur
Banerjee, D. M., Basu, P. C., and Srivastava, N., 1980, Petrology, Mineralogy, Geochemistry, and Origin of the Precambrian Aravallian Phosphorite Deposits of Udaipur and Jhabua, India, Economic Geology 75: 1181-1199.
          • Zawar deposit
Chauhan, D. S. (1984). Sedimentary pyrite from Pb-Zn deposits of the Zawar and Rajpura-Dariba regions and its bearing on the genesis of base metal sulfides. In Syngenesis and Epigenesis in the Formation of Mineral Deposits (pp. 36-42). Springer Berlin Heidelberg.
Chauhan, D. S. (1984). Sedimentary pyrite from Pb-Zn deposits of the Zawar and Rajpura-Dariba regions and its bearing on the genesis of base metal sulfides. In Syngenesis and Epigenesis in the Formation of Mineral Deposits (pp. 36-42). Springer Berlin Heidelberg.
Chauhan, D. S. (1984). Sedimentary pyrite from Pb-Zn deposits of the Zawar and Rajpura-Dariba regions and its bearing on the genesis of base metal sulfides. In Syngenesis and Epigenesis in the Formation of Mineral Deposits (pp. 36-42). Springer Berlin Heidelberg.
Willies, L. (1987). ANCIENT ZINC-LEAD—SILVER MINING IN RAJASTHAN, INDIA—INTERIM REPORT. Bulletin of the Peak District Mines Historical Society. Vol, 10(2).
Chauhan, D. S. (1984). Sedimentary pyrite from Pb-Zn deposits of the Zawar and Rajpura-Dariba regions and its bearing on the genesis of base metal sulfides. In Syngenesis and Epigenesis in the Formation of Mineral Deposits (pp. 36-42). Springer Berlin Heidelberg.
Tilak, V. V. S. S., & Aswathanarayana, U. (1963, January). Geochemical studies in the uranium prospect at Umra, Rajasthan. In Proceedings of the Indian Academy of Sciences-Section A (Vol. 57, No. 1, pp. 34-43). Springer India.
  • Tamil Nadu
    • Krishnagiri District
Ackerman, L., Magna, T., Rapprich, V., Upadhyay, D., Krátký, O., Čejková, B., ... & Hrstka, T. (2017). Contrasting petrogenesis of spatially related carbonatites from Samalpatti and Sevattur, Tamil Nadu, India. Lithos, 284, 257-275.
Econ Geol. (1995) 90:255-270
    • Thiruvannaamalai district
Mineralogical Magazine 63:743-755.
  • Telangana
    • Khammam District
      • Palwancha (Palvancha; Paloncha)
K. Kameswara Rao and C. Mahadevan (1960) Studies of Copper Minerals in Old Workings for Copper in Yenambail, Khammam District, Andhra Pradesh - Proceedings of the Indian Academy of Sciences, Section A, 51, 49-59.
    • Mancherial District
Setti, D.N., Rao, T.S. & Raju, M.S. 1978. A note on the occurrence of kimberlite-carbonatite enclaves in the "Peninsula gneiss", Warangal District, Andhra Pradesh. Indian Minerals, 33, 53-55.
    • Nalgonda District
Kaur, G., & Mitchell, R. H. (2017) Mineralogy of the baotite-bearing Gundrapalli lamproite, Nalgonda district, Telangana, India. 11th International Kimberlite Conference Extended Abstract No. 11IKC-4499, 2017
      • Ramadugu Lamproite Field
Kaur, G., Mitchell, R.H., Ahmed, S. (2018) Mineralogy of the Vattikod lamproite dykes, Ramadugu lamproite field, Nalgonda District, Telangana: A possible expression of ancient subduction-related alkaline magmatism along Eastern Ghats Mobile Belt, India. Mineralogical Magazine, 82(1), 35-58.
Kaur, G., Mitchell, R.H., Ahmed, S. (2018) Mineralogy of the Vattikod lamproite dykes, Ramadugu lamproite field, Nalgonda District, Telangana: A possible expression of ancient subduction-related alkaline magmatism along Eastern Ghats Mobile Belt, India. Mineralogical Magazine, 82(1), 35-58.
Kaur, G., Mitchell, R.H., Ahmed, S. (2018) Mineralogy of the Vattikod lamproite dykes, Ramadugu lamproite field, Nalgonda District, Telangana: A possible expression of ancient subduction-related alkaline magmatism along Eastern Ghats Mobile Belt, India. Mineralogical Magazine, 82(1), 35-58.
Kaur, G., Mitchell, R.H., Ahmed, S. (2018) Mineralogy of the Vattikod lamproite dykes, Ramadugu lamproite field, Nalgonda District, Telangana: A possible expression of ancient subduction-related alkaline magmatism along Eastern Ghats Mobile Belt, India. Mineralogical Magazine, 82(1), 35-58.
Kaur, G., Mitchell, R.H., Ahmed, S. (2018) Mineralogy of the Vattikod lamproite dykes, Ramadugu lamproite field, Nalgonda District, Telangana: A possible expression of ancient subduction-related alkaline magmatism along Eastern Ghats Mobile Belt, India. Mineralogical Magazine, 82(1), 35-58.
  • West Bengal
    • Purulia District
Baidya, Tapan Kumar, Sen, Gautam, and Chakravorty, Priya Shankar, 1981, Uranium Occurrences in and Around Nawahatu, Purulia District, West Bengal, India - A Preliminay Report, Economic Geology, v 76, p. 970-973.
Indian Ocean
 
  • Carlsberg Ridge
    • Wocan Hydrothermal Field
Popoola, Samuel Olatunde, Xiqiu Han, Yejian Wang, Zhongyan Qiu, Ying Ye, and Yiyang Cai. (2019) "Mineralogical and Geochemical Signatures of Metalliferous Sediments in Wocan-1 and Wocan-2 Hydrothermal Sites on the Carlsberg Ridge, Indian Ocean" Minerals 9, no. 1: 26. https://doi.org/10.3390/min9010026
Wang, Y., Han, X., Petersen, S., Frische, M., Qiu, Z., Li, H., ... & Cui, R. (2017) Mineralogy and trace element geochemistry of sulfide minerals from the Wocan Hydrothermal Field on the slow-spreading Carlsberg Ridge, Indian Ocean. Ore Geology Reviews, 84, 1-19.
Myanmar
 
  • Kachin State
    • Mohnyin District
      • Hpakant Township (Hpakan; Phakant; Phakan)
Shi, G., Harlow, G.E., Wang, J. Wang, J., Ng, E., Wang, X., Cao, G. & Cui, W. (2012): Mineralogy of jadeitite and related rocks from Myanmar:a review with new data. Eur. J. Mineral. 24, 345–370
  • Sagaing Region
    • Katha District
      • Kawlin Township
Cho Cho Aye and Ye Myint Swe (2014): Mineralogical investigation of refractory gold ores of the Kawlin Wuntho area: Kyaukpahto and Kyaukpazat gold mines. GEOSEA XIII - GeoMyanmar 2014, 10-11 March 2014, Sedona Hotel, Yangon, Myanmar, Abstracts, 20-21.
Khin Zaw, Peters, S.G., Cromie, P., Burrett, C., and Zengqian Hou (2007): Ore Geology Reviews 31, 3-47.
Ye Myint Swe, Lee, I., Than Htay, Min Aung (2004): Gold mineralization at the Kyaukpahto mine area, northern Myanmar. Resour. Geol. 54, 197-204.
Singer, D.A., Berger, V.I., Moring, B.C. (2008) Porphyry copper deposits of the world: Database and grade and tonnage models, 2008. Open-File Report 2008-1155
      • Wuntho Township
        • Kyaukpazat (Choukpazat)
Cho Cho Aye and Ye Myint Swe (2014): Mineralogical investigation of refractory gold ores of the Kawlin Wuntho area: Kyaukpahto and Kyaukpazat gold mines. GEOSEA XIII - GeoMyanmar 2014, 10-11 March 2014, Sedona Hotel, Yangon, Myanmar, Abstracts, 20-21.
H. Louis (1897): Note on Altaite from Burma. Mineralogical Magazine 11, 215-216.
    • Yinmabin District
      • Salingyi Township
Mitchell, Andrew H. G., Myint, Win, Lynn, Kyi, Htay, Myint Thein, Oo, Maw, Zaw, Thein (2011) Geology of the High Sulfidation Copper Deposits, Monywa Mine, Myanmar. Resource Geology, 61 (1) 1-29 doi:10.1111/j.1751-3928.2010.00145.x
Mitchell, A. H. G., Myint, W., Lynn, K., Htay, M. T., Oo, M., & Zaw, T. (2008). The Monywa copper deposits, Myanmar: Chalcocite-covellite veins and breccia dykes in a late Miocene epithermal system. In Proceedings of the International Symposia on Geoscience Resources and Environments of Asian Terranes (GREAT 2008), 4th IGCP526 and 5th APSEG, Bangkok, Thailand (pp. 219-222).
www.infomine.com (n.d.) http://www.infomine.com/companies-properties/infodbweb/ChargePropertySummary.asp?SearchID=25738
Mitchell, A. H. G., Myint, W., Lynn, K., Htay, M. T., Oo, M., & Zaw, T. (2008). The Monywa copper deposits, Myanmar: Chalcocite-covellite veins and breccia dykes in a late Miocene epithermal system. In Proceedings of the International Symposia on Geoscience Resources and Environments of Asian Terranes (GREAT 2008), 4th IGCP526 and 5th APSEG, Bangkok, Thailand (pp. 219-222).
www.infomine.com (n.d.) http://www.infomine.com/companies-properties/infodbweb/ChargePropertySummary.asp?SearchID=25738
Mitchell, A. H. G., Myint, W., Lynn, K., Htay, M. T., Oo, M., & Zaw, T. (2008). The Monywa copper deposits, Myanmar: Chalcocite-covellite veins and breccia dykes in a late Miocene epithermal system. In Proceedings of the International Symposia on Geoscience Resources and Environments of Asian Terranes (GREAT 2008), 4th IGCP526 and 5th APSEG, Bangkok, Thailand (pp. 219-222).
www.infomine.com (n.d.) http://www.infomine.com/companies-properties/infodbweb/ChargePropertySummary.asp?SearchID=25738
Mitchell, A. H. G., Myint, W., Lynn, K., Htay, M. T., Oo, M., & Zaw, T. (2008). The Monywa copper deposits, Myanmar: Chalcocite-covellite veins and breccia dykes in a late Miocene epithermal system. In Proceedings of the International Symposia on Geoscience Resources and Environments of Asian Terranes (GREAT 2008), 4th IGCP526 and 5th APSEG, Bangkok, Thailand (pp. 219-222).
www.infomine.com (n.d.) http://www.infomine.com/companies-properties/infodbweb/ChargePropertySummary.asp?SearchID=25738
Nepal
 
  • P1 Koshi Pradesh
    • Ilam District
Intl Business Pub (2007) Nepal Mineral & Mining Sector Investment and Business Guide
Pakistan
 
  • Khyber Pakhtunkhwa Province
    • Lakki Marwat District
Alia, A., pana, J., Yana, J., Nabi, A., & Zhong, F. (2018). Genesis of Sandstone Type Uranium Deposit in Dhok Pathan Formation, Siwalik Group of Trans-Indus Salt Range (Surghar Range), Pakistan. Uranium Raw Material for the Nuclear Fuel Cycle, 24.
    • Mardan District
      • Koga Nepheline Syenite Intrusion
Deans, T., & Powell, J. L. (1968). Trace elements and strontium isotopes in carbonatites, fluorites and limestones from India and Pakistan. Nature, 218(5143), 750-752.
Siddiqui, S. F. A. (1967). Note on the discovery of carbonatite rocks in the Chamla area, Swat State, West Pakistan. Geol. Bull. Panjab Univ., 6, 85-88.
    • Swabi District
M. Qasim Jan, P.S.B. Colback & Masood Ahmad , (1985) Low-temperature Secondary Minerals from Tarbela. Geol. Bull. Univ. Peshawar, 18:189-197
Sri Lanka
 
  • North Central Province
    • Anuradhapura District
Manthilake, M. A. G. M., Sawada, Y., & Sakai, S. (2008). Genesis and evolution of Eppawala carbonatites, Sri Lanka. Journal of Asian earth sciences, 32(1), 66-75.
Davidson, A. J. G, Notholt, R. P. , Sheldon D. F. (2005) Phosphate Deposits of the World - Volume 2. Phosphate Rock Resources Vol. 2. Cambridge University Press.
Jayawardena, D. D. S. (1976). The Eppawala carbonatite complex in north-west Sri Lanka. Economic Bulletin, (3), 31-41.
Hapuarachichi, D.J.A.C. 1996. On the origin of the Eppawala apatite deposits, Sri Lanka. Journal of African Earth Sciences, 23, XIII-XXIV.
Samarakoon, N., Malaviarachchi, S. P., Senaratne, A., & Wijayasinghe, A. (2021). Gold occurrences in copper-magnetite-apatite deposit at Seruwila, Sri Lanka. Ore and Energy Resource Geology, 8, 100014.
  • North Western Province
    • Kurunegala District
      • Kahatagaha
Touzain, P., Balasooriya, N., Bandaranayake, K., & Descolas-Gros, C. (2010). Vein Graphite from the Bogala and Kahatagaha–Kolongaha Mines, Sri Lanka: a Possible Origin. The Canadian Mineralogist, 48(6), 1373-1384.
Wijayarathne, W. D. B., Madugalla, T. B. N. S., & Pitawala, H. M. T. G. A. (2013). Mineral Chemistry and Petrogenesis of Carbonatite Bodies at Kawisigamuwa, Sri Lanka. Proceedings to 29th Technical Sessions of Geological Society of Sri Lanka, 57, 60.
Pattiaratchi, D.B. (1967) Anandite, a new barium iron silicate from Wilagedera, North Western Province, Ceylon [Sri Lanka], Mineralogical Magazine (1967) 36, 1-4.
  • Sabaragamuwa Province
    • Kegalle District
      • Bogala
Touzain, P., Balasooriya, N.W.B., Bandaranayake. K., deScolas-Gros C. (2010) Vein Graphite from the Bogala and Kahatagaha-Kolongoha Mines, Sri Lanka: a possible origin. The Canadian Mineralogist, 48:6, 1373-1384.
    • Ratnapura District
      • Embilipitiya
        • Kolonne
Müller, H. D. & Jahn, S. (2006): Kolonne bei Embilipitiya auf Sri Lanka-eine interessante Fundstelle für Olivin, Hornblende und Spinelle. Mineralien Welt 17 (4), 44-51.
 
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